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Effect of Holding Temperature on Microstructure and Mechanical Properties of High-Strength Multiphase Steel

机译:保持温度对高强度多相钢组织和力学性能的影响

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摘要

Isothermal holding following intercritical annealing is usually used in microstructure control, e.g., fractions and stabilities of retained-austenite (RA). Fe-0.22C-2.5Mn-0.47Si-0.41Cr-0.02Nb (mass%) steel is subjected to intercritical annealing and isothermal treatment at 250, 300, 350, and 400 degrees C to elucidate the impact on microstructures and mechanical properties by means of electron microscopy and uniaxial tensile test, respectively. The results show that the isothermal holding temperature is vital for the formed phases, including the morphology, volume fraction, and carbon content of RA in the processed steels. The tensile test results indicate that the mechanical properties including Ultra-tensile strength (UTS), Yield strength (YS), as well as Total Elongation (TEL) are attributed to the synthetic action of all constituents of phase morphology and corresponding fractions, e.g., hard-to-soft phase ratio, morphology and fraction of RA, dispersed precipitates. An excellent combination of strength-ductility of the present multiphase steel has been explained in terms of their specific microstructure.
机译:后临界退火之后的等温持有通常用于微观结构控制,例如保留奥氏体(Ra)的级分和稳定性。 FE-0.22C-2.5MN-0.47SI-0.41CR-0.02NB(质量%)钢在250,300,350和400摄氏度下进行间临临时退火和等温处理,以阐明对微观结构和机械性能的影响电子显微镜和单轴拉伸试验的方法。结果表明,等温控温度对于所形成的阶段至关重要,包括加工钢中Ra的形态,体积分数和碳含量。拉伸试验结果表明,包括超拉伸强度(UTS),屈服强度(Ys)的机械性能以及总伸长率(Tel)归因于相形态的所有组分和相应的级分的合成作用,例如, RA的难以软相比,形态和级分,分散沉淀物。已经在其特定的微观结构方面解释了本发明的多相钢的强度延展性的优异组合。

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